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Core Blowing Process - Assessment of Core Sands Properties and Preliminary Model Testing

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The effects of filling the core box cavity and sand compaction in processes of core production by blowing methods (blowing, shooting) depend on several main factors. The most important are: geometrical parameters of cavity and complexity of its shape, number, distribution and shape of blowing holes feeding sands as well as the venting of a technological cavity. Values of individual parameters are selected according to various criteria, but mostly they should be adjusted to properties of the applied core sand. Various methods developed by several researchers, including the authors own attempts, allow to assess core sands properties on the basis of special technological tests projecting the process into a laboratory scale. The developed criteria defining a degree or a filling ability factor provide a better possibility of assessing the core sand behaviour during flowing and core box filling, which indicate the value and structure of the obtained compacting decisive – after hardening – for strength and permeability. The mentioned above aspects are analysed – on the basis of authors’ own examinations - in the hereby paper.
Rocznik
Strony
25--28
Opis fizyczny
Bibliogr. 10 poz., rys., tab., wykr.
Twórcy
autor
  • AGH - University of Science and Technology, Faculty of Foundry Engineering, Reymonta 23 str., 30-059 Kraków, Poland
autor
  • AGH - University of Science and Technology, Faculty of Foundry Engineering, Reymonta 23 str., 30-059 Kraków, Poland
autor
  • AGH - University of Science and Technology, Faculty of Foundry Engineering, Reymonta 23 str., 30-059 Kraków, Poland
  • AGH - University of Science and Technology, Faculty of Foundry Engineering, Reymonta 23 str., 30-059 Kraków, Poland
Bibliografia
  • [1] Aksjonow, P. N. (1965). Seleced topics from the theory of casting machines. Katowice: „Śląsk” Publishing House.
  • [2] Dańko, J. (1992). Theoretical and experimental verification of the model used for calculating Aksyonov blast stoves. Archiwum Technologii Budowy Maszyn. 10, 7-15.
  • [3] Dańko, J. & Dańko, R. (2009). Assessment of Core Sand suitability for filling the core-box and for compaction. Archives of Foundry Engineering. 9(1), 37-40.
  • [4] Asłanowicz, M., Dańko, J., Dańko, R., Fedoryszyn, A. & Fulko, T. (2013). Conceptual design of a core making system. Archives of Foundry Engineering. 13(spec. 1), 13-16.
  • [5] Boenisch, D. & Knauf, M. (1991). Kernschiessen - Untersuchungen mit neuartigen Prüfkörpern und verschiedenen Kernbindern. Giesserei. 18, 640-646.
  • [6] Dańko, J., Zych, J. & Dańko, R. (2009). Diagnostic methods of technological properties and casting cores quality. Archives of Metallurgy and Materials. 54(2), 381-392.
  • [7] Reek, R. (2005). Optimierung des Füll-und Hartungsvorgangs von Giessereisandkernen durch 3-D Simulation der Strömungsvorgänge. Giessereiforschung. 57(3), 2-14.
  • [8] Vidal, V., Beauvais, P., Leger-Delcourt, E., Hossemand, J. S. & Sadon, P. (2005). Pressure distribution during core production I core blowing machines. Fonderie Fondeur D’Aujourd’Hui. 241, 12-20.
  • [9] Walker, M., Palczenski, S., Snider, D. & Williams, K. (2002). Modeling Sand Core Blowing: Simulation’s Next Challenge. Modern Casting. April, 41-43.
  • [10] Winartomo B., Vroomen U., Buhrig-Polaczek A. & Pelzer M (2006). Multiphase modelling od core shooting process. Interational Journal of Cast Metals Research. 18(1), 13-20.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ea406250-557d-4da9-a887-cc5225a2ea8d
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